Highly conductive single-molecule junctions typically involve π-conjugated molecular bridges, whose frontier molecular orbital energy levels can be fine-tuned to best match the Fermi level of the leads. Fully saturated wires, e.g., alkanes, are typically thought of as insulating rather than highly conductive. However, in this work, we demonstrate in silico that significant zero-bias conductance can be achieved in such systems by means of topology. Specifically, caged saturated hydrocarbons offering multiple σ-conductance channels afford transmission far beyond what could be expected based upon conventional superposition laws, particularly if these pathways are composed entirely from quaternary carbon atoms. Computed conductance of molecular...
Ferrocene (Fc) is a promising candidate for nanoscale molecular devices since it offers electronic f...
This paper describes the conductance of single-molecules and self-assembled monolayers comprising an...
Molecular electronics aims at exploiting the internal structure and electronic orbitals of molecules...
Highly conductive single-molecule junctions typically involve pi-conjugated molecular bridges, whose...
Revealing the mechanisms of electronic transport through metal-molecule interfaces is of central imp...
In classical electrodynamics current-voltage Characteristics are described by Ohm’s law. If charge ...
By exploiting selective link chemistry, formation of single molecule junctions with reproducible con...
We have measured the conductance of single-molecule junctions created with three different molecular...
ConspectusThe field of molecular electronics has grown rapidly since its experimental realization in...
Controlling charge transport through molecules is challenging because it requires engineering of the...
This paper reports highly efficient coherent tunneling in single-molecule wires of oligo-ferrocenes ...
We measure the conductance of amine-terminated molecules by breaking Au point contacts in a molecula...
Recent advances in nanofabrication techniques have made possible to contact individual molecules bet...
If the factors controlling the decay in single-molecule electrical conductance G with molecular leng...
Understanding the transport characteristics of single molecules bonded between metal electrodes is o...
Ferrocene (Fc) is a promising candidate for nanoscale molecular devices since it offers electronic f...
This paper describes the conductance of single-molecules and self-assembled monolayers comprising an...
Molecular electronics aims at exploiting the internal structure and electronic orbitals of molecules...
Highly conductive single-molecule junctions typically involve pi-conjugated molecular bridges, whose...
Revealing the mechanisms of electronic transport through metal-molecule interfaces is of central imp...
In classical electrodynamics current-voltage Characteristics are described by Ohm’s law. If charge ...
By exploiting selective link chemistry, formation of single molecule junctions with reproducible con...
We have measured the conductance of single-molecule junctions created with three different molecular...
ConspectusThe field of molecular electronics has grown rapidly since its experimental realization in...
Controlling charge transport through molecules is challenging because it requires engineering of the...
This paper reports highly efficient coherent tunneling in single-molecule wires of oligo-ferrocenes ...
We measure the conductance of amine-terminated molecules by breaking Au point contacts in a molecula...
Recent advances in nanofabrication techniques have made possible to contact individual molecules bet...
If the factors controlling the decay in single-molecule electrical conductance G with molecular leng...
Understanding the transport characteristics of single molecules bonded between metal electrodes is o...
Ferrocene (Fc) is a promising candidate for nanoscale molecular devices since it offers electronic f...
This paper describes the conductance of single-molecules and self-assembled monolayers comprising an...
Molecular electronics aims at exploiting the internal structure and electronic orbitals of molecules...